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Facile Preparation of Flame Retardant Cotton Fabric via Adhesion of Mg(OH)2 by the Assistance of Ionic Liquid

机译:离子液体辅助下Mg(OH)2的粘合制备阻燃棉织物

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摘要

A new approach for flame retardant functional finishing of textiles was explored to improve flame retardancy of cotton fabrics by simple physical adhesion method. Mg(OH) was adhered to cotton fiber with the aid of fiber swelling in ionic liquid on heating and shrinkage on washing to obtain flame retardancy. The effects of immobilizing condition and methods on flame retardancy were discussed. The surface morphology, crystal structure, combustion behavior, thermal and physical properties of cotton fabric adhered with Mg(OH) were analyzed. The afterflame time and afterglow time of adhered cotton fabric were significantly reduced to less than 5 s. The thermal weight loss of cotton fabric was increased by 11.7% and the total heat released per unit mass was decreased by 20.9% after MH adhesion. The simple eco-friendly adhesion method provided a convenient approach for the development and application of flame retardant functional cellulosic textiles.
机译:探索了一种新的纺织品阻燃功能性整理方法,通过简单的物理粘合方法提高了棉织物的阻燃性。 Mg(OH)借助于加热时在离子液体中的纤维溶胀和洗涤时的收缩而附着在棉纤维上,从而获得阻燃性。讨论了固定条件和方法对阻燃性的影响。分析了附着有Mg(OH)的棉织物的表面形态,晶体结构,燃烧行为,热学和物理性能。粘附的棉织物的余焰时间和余辉时间显着减少到小于5 s。 MH附着后,棉织物的热失重增加了11.7%,每单位质量释放的总热量减少了20.9%。简单的环保粘合方法为阻燃功能性纤维素纺织品的开发和应用提供了方便的途径。

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